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IEEE Transactions on Bio-Medical Engineering|January 23, 2014
Influences of interpolation error, electrode geometry, and the electrode-tissue interface on models of electric fields produced by deep brain stimulationBryan Howell, Sagar Naik, Warren M GrillJournal of Neural Engineering|August 11, 2020
Quantitative comparisons of block thresholds and onset responses for charge-balanced kilohertz frequency waveformsEdgar Peña, Nicole A Pelot, Warren M GrillJournal of Computational Neuroscience|February 13, 2016
A biophysical model of the cortex-basal ganglia-thalamus network in the 6-OHDA lesioned rat model of Parkinson's diseaseKarthik Kumaravelu, David T Brocker, Warren M GrillPlos One|December 24, 2014
Evaluation of intradural stimulation efficiency and selectivity in a computational model of spinal cord stimulationBryan Howell, Shivanand P Lad, Warren M GrillJournal of Neural Engineering|September 9, 2015
Effects of frequency-dependent membrane capacitance on neural excitabilityBryan Howell, Leonel E Medina, Warren M GrillScientific Reports|March 4, 2021
Non-monotonic kilohertz frequency neural block thresholds arise from amplitude- and frequency-dependent charge imbalanceEdgar Peña, Nicole A Pelot, Warren M GrillAnnual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual International Conference|December 3, 2025
Exploring Tonic and Burst Stimulation in Neural Fibers: A Computational Modeling ApproachNickolaj Ajay Atchuthan, Warren M Grill, Suzan MeijsPlos Computational Biology|March 1, 2024
Computational models of compound nerve action potentials: Efficient filter-based methods to quantify effects of tissue conductivities, conduction distance, and nerve fiber parametersEdgar Peña, Nicole A Pelot, Warren M GrillBiophysical Journal|July 5, 2018
Coupling Magnetically Induced Electric Fields to Neurons: Longitudinal and Transverse ActivationBoshuo Wang, Warren M Grill, Angel V PeterchevIEEE Transactions on Neural Systems and Rehabilitation Engineering : a Publication of the IEEE Engineering in Medicine and Biology Society|June 6, 2009
Hindlimb endpoint forces predict movement direction evoked by intraspinal microstimulation in catsMichel A Lemay, Dane Grasse, Warren M GrillPageof 28